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1、基因调控网络:数学模型与仿真马宏宾系统所2003.10.30纲要 必要的说明 问题与背景 模型与仿真 总结与展望 参考文献有向图bayesian网络boolean网络及推广常微分方程“定性”微分方程偏微分方程随机模型基于规则的形式方法必要的说明 我完全不懂生物学; 我为什么要讲这个? 我讲的侧重点在哪?内容完全基于:童维上传modeling and simulation of genetic regulatory systems: a literature review问题与背景 什么是基因调控网络? 细胞、dna、蛋白质、基因、基因网络 为什么要研究基因调控网络? 从分子水平认识细胞组织的功
2、能。 基因调控网络与复杂性 了解基因调控网络,对我们有什么启发?问题与背景v基因和蛋白质 genes code for proteins that are essential for development and functioning of organism: gene expression问题与背景v基因表达的调控:不同层次 gene expression controlled by proteins produced by other genes: regulatory interactions问题与背景v基因调控网络:genetic regulatory network consis
3、ts of set of genes, proteins, small molecules, and their mutual regulatory interactions。development and functioning of organisms cell emerges from interactions in genetic regulatory networks。问题与背景 例子:choice between alternative developmental pathways controlled by network of genes, proteins, and mutu
4、al regulatory interactions。 基因调控网络的复杂性 large networks complex cells has many components that can interact in complex ways. dynamics processes are hard to understand by intuitive approaches alone. genetic regulatory networks have complicated interactions far beyond correlation of gene expression patt
5、erns. clustering cannot reveal causal connections between genes. 为什么需要数学建模与仿真? precise and unambiguous description of network of interactions systematical derivation of behavioral predictions问题与背景问题与背景 目标我们想知道: which genes are expressed?when and where in the organisms?to which extent? are there any
6、universal laws? can we predict the evolution of the network? how to predict the evolution of the network?问题与背景 途径实验、建模、仿真:模型:有向图模型:有向图模型:baysian network模型:baysian network模型:boolean network模型:boolean network模型:boolean networktruth tables state-transition diagram 模型:模型:generalized logical network模型:no
7、nlinear ode negative feedback gene encodes a protein inhibiting its own expression important for homeostasis, maintenance of system near a desired state steady state analysis transient behavior simulation模型:nonlinear ode模型:nonlinear ode positive feedback gene encodes a protein activating its own exp
8、ression. important for differentiation, evolution towards one of two alternative states of system steady states transient behaviors模型:nonlinear odevapplications:模型:piecewise-linear ode模型:qualitative differential equation qde: abstraction of the form qualitative value x: qualitative function fi: qsim
9、 algorithmqualitative behaviors qualitative simulation模型:spatially distributed modelo configuration:o discrete model:o continuous model:boundary conditions:模型:stochastic model模型:stochastic model time evolution of p(x,t):master equation: stochastic simulation: use r.v. and 模型:stochastic modelvsimulat
10、ions:vapplications:模型:rule-based formalism knowledge base expert system? facts: rules:总结与展望总结与展望 computer tools for modeling and simulation will be necessary to understand genetic regulatory processes variety of approaches available, representing genetic regulatory systems on different levels of abs
11、traction choice of approach depends on aim of analysis and on available information: knowledge on reaction mechanisms quantitative data on model parameters and gene expression levels serious applications are beginning to emerge参考文献hidde de jong, modeling and simulation of genetic regulatory systems:
12、 a literature review, journal of computational biology, 9 (1), 2002.harley h. mcadams, adam arkin, simulation of prokaryotic genetic circuits, annu. rev. biophys. biomol. struct. 1998. 27:199224.paul smolen, douglas a. baxter and john h. byrne, modeling transcriptional control in gene networksmethods, recent results, and future directions, bulletin of mathematical biology (2000) 62, 247292.christophe roos, facing biological complexity from one cell to a multicellular organism, technology bioinformatics.eric alm and adam p arkin, biological networks, current opinion in struct
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